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Archaic human parents also had a hard time raising kids Deformed head shapes in fossilized humans show their infants were probably just as helpless as modern human babies, requiring constant parental care Research news

July 29, 2026

An artist¡¯s reconstruction of how Homo erectus parents cared for their children.
An artist’s reconstruction of how Homo erectus parents cared for their children. Like modern humans, from this research the team believes Homo erectus mothers held helpless newborns in their arms and shared the care with the father and other group members. Laying newborns with immature heads and neck muscles on the ground can cause deformational plagiocephaly. Illustration by Utako Kikutani. ©Yousuke Kaifu CC BY

Archaic human parents had to look after helpless infants like modern day parents do, according to new research. Human babies are born less developed than those of other great apes, and so are unable to move as freely. A common result of this is deformational plagiocephaly, also called flat head syndrome. Professor Yousuke Kaifu at the University of Tokyo led a team which studied head shapes from scans of living infants, historical Japanese skeletal remains, fossilized specimens of Homo erectus and Homo floresiensis, and compared these to measurements of dry skulls from other great apes. Human head shapes across the ages, as well as the fossilized samples, exhibited a far wider range of deformation. The team sees this as evidence that archaic humans birthed helpless infants, with implications for childcare practices and potentially cooperative social behaviors dating back hundreds of thousands of years.

Front and base photographs of LB1 showing the degree of skewness of the head.
Cranial deformation in H. floresiensis. Front and base view of LB1, the type specimen of H. floresiensis. The arrows show the sites and directions of the main forces presumed to have caused cranial deformation. ©Kaifu Y et al. 2026 CC BY

Many parents understand the fear of taking a fragile newborn home. Compared to other great apes – large primates classified in the same family as humans – our children are born completely helpless, with weak neck muscles, soft cranial bones and still underdeveloped brains, which continue to grow rapidly after birth.

One theory for this, called the obstetrical dilemma, sees it as a trade-off for being able to walk upright (which affects the shape of the birth canal) and have large-brained offspring. But when in our evolutionary timeline did this helpless newborn phase – and the parental responsibilities which go with it – begin?

It is a difficult question to answer. Fossils of our archaic ancestors are mostly fragmented and rarely of infants. However, a new approach, which can be applied to fossils of any maturity, may provide the evidence researchers have been looking for.

Two graphs plotting the degree of deformation or skewness for all individuals in the study.
Humans vs. four great apes. The crosses on these graphs represent the great apes (violet = P. troglodytes, blue = P. paniscus, orange = Pongo, black = Gorilla), while the light blue circles = H. sapiens, and red stars = fossil Homo (LB = Liang Bua, Ng = Ngandong, Sm = Sambungmacan). The further the point is from 0 on the vertical axis, the greater the distortion. On the right, the density curves show the distributions of the pooled great ape (dotted line) and modern human (solid line). ©Yoshimura & Kaifu Y et al. 2026 CC BY

“Our method looks for changes in the shape of the cranium (the top part of the skull) which occurred around or soon after birth and remained to some extent into adulthood,” explained Kaifu from the University Museum at the University of Tokyo. “Nowadays, this is a common condition, called deformational plagiocephaly. The shape of the head is affected by the baby lying the same way frequently due to how they are held or laid down, and from the baby’s neck muscles being too weak to control the position of the head.”

Kaifu was inspired after visiting the skeleton of Homo floresiensis (who lived more than 50,000 years ago) in Indonesia in 2007. He was struck by the deformed shape of their skull which, from the structure of the bones, appeared to have occurred after birth. To understand why, he contacted a hospital clinician who identified the cause as deformational plagiocephaly.

This led Kaifu to theorize that skull deformation, which can be identified as not being caused by disease or post-burial, may be an indicator of helplessness in infancy, as it implies a soft, underdeveloped skull and head immobility.

Side by side photo of a historic human skull and a fosillized skull, showing deformation.
Cranial deformation in historical modern human and H. erectus. Back views of the skulls of a historical human (left) and a Homo erectus from Ngawi, Java (right: undated), exhibiting severe transverse deformational plagiocephaly. ©Kaifu Y et al. 2026 CC BY

To test this theory, he gathered a team including researchers from Japan and Indonesia to collect and compare CT scans of 123 modern, healthy infants aged from 1 day to 17 months old, measurements from historical human skulls from Japan dated from about 200 to 1,000 years old (385 people in total), great ape skulls (996 individuals), and fossilized human skulls of Homo erectus (five fossils) and Homo floresiensis (one fossil).

From the results, the team could see that other great apes – including chimpanzees, bonobos, gorillas and orangutans – which are born more physically independent and capable, were grouped within a narrower range of cranial deformity. The human samples – including fossilized specimens – exhibited a much broader range of deformation and head shapes.

“This was exciting as we don’t know a lot about the behavior of Homo erectus. They lived between more than 1 million to 110,000 years ago, and we only have a tiny archaeological record from their stone tools. However, if they gave birth to physically helpless babies, then this tells us something about their behaviors, as they would need to have cared for the baby as diligently as we do,” said Kaifu. “This likely would have necessitated some social interactions, as it would be difficult for the mother to care for and protect the newborn in that environment, where there would have been other large predators, on her own.”

Another surprising outcome of the research was the level of head deformation in Homo floresiensis. Diminutive in stature (affectionately referred to as the “hobbit”), their brain was also much smaller, comparable in size to a chimpanzee, so it is unknown why their situation wasn’t more similar to other great apes.

“Even though their brain size was much smaller, their newborn stage was already following the same kind of difficult process as larger-brained modern human ancestors,” said Kaifu. “Rather than just being a trade-off for our large brains, the challenging responsibility of childcare and supporting mothers with their infants may actually be an integral part of our human history, at least since the time of the common ancestor of Homo erectus and Homo floresiensis more than 1 million years ago.”

Papers

Yousuke Kaifu, Wataru Yano, Makoto Hikosaka, Daisuke Shimizu, Takeshi Nishimura, Daisuke Kubo, Rusyad Adi Suriyanto, Jatmiko, Thomas Sutikna, Naoki Morimoto and Iwan Kurniawan, "Cranial evidence for human-like helpless infancy in Homo erectus and Homo floresiensis," Proceedings of the Royal Society B: July 29, 2026, doi:10.1098/rspb.2026.1055.
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